AI Article Synopsis

  • Emerging highly pathogenic viruses, such as SARS-CoV-2, Lassa virus, and Machupo virus, pose significant risks to global health, prompting initiatives like the establishment of Antiviral Drug Discovery centers by NIAID.
  • Researchers developed paired entry assays to screen approximately 650,000 compounds using a dual pseudotyped virus infection system, achieving an extensive ultra-high throughput screening with over 2.4 million wells tested.
  • The screening identified a total of 1812, 1506, and 2586 unique hits for LASV, MACV, and SARS2, respectively, and confirmed several promising compounds with low cytotoxicity and strong antiviral activity, with some compounds showing IC

Article Abstract

Emerging highly pathogenic viruses can pose profound impacts on global health, the economy, and society. To meet that challenge, the National Institute of Allergy and Infectious Diseases (NIAID) established nine Antiviral Drug Discovery (AViDD) centers for early-stage identification and validation of novel antiviral drug candidates against viruses with pandemic potential. As part of this initiative, we established paired entry assays that simultaneously screen for inhibitors specifically targeting SARS-CoV-2 (SARS2), Lassa virus (LASV) and Machupo virus (MACV) entry. To do so we employed a dual pseudotyped virus (PV) infection system allowing us to screen ∼650,000 compounds efficiently and cost-effectively. Adaptation of these paired assays into 1536 well-plate format for ultra-high throughput screening (uHTS) resulted in the largest screening ever conducted in our facility, with over 2.4 million wells completed. The paired infection system allowed us to detect two PV infections simultaneously: LASV + MACV, MACV + SARS2, and SARS2 + LASV. Each PV contains a different luciferase reporter gene which enabled us to measure the infection of each PV exclusively, albeit in the same well. Each PV was screened at least twice utilizing different reporters, which allowed us to select the inhibitors specific to a particular PV and to exclude those that hit off targets, including cellular components or the reporter proteins. All assays were robust with an average Z' value ranging from 0.5 to 0.8. The primary screening of ∼650,000 compounds resulted in 1812, 1506, and 2586 unique hits for LASV, MACV, and SARS2, respectively. The confirmation screening narrowed this list further to 60, 40, and 90 compounds that are unique to LASV, MACV, and SARS2, respectively. Of these compounds, 8, 35, and 50 compounds showed IC value < 10 μM, some of which have much greater potency and excellent antiviral activity profiles specific to LASV, MACV, and SARS2, and none are cytotoxic. These selected compounds are currently being studied for their mechanism of action and to improve their specificity and potency through chemical modification.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11542554PMC
http://dx.doi.org/10.1016/j.slasd.2024.100178DOI Listing

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Article Synopsis
  • Emerging highly pathogenic viruses, such as SARS-CoV-2, Lassa virus, and Machupo virus, pose significant risks to global health, prompting initiatives like the establishment of Antiviral Drug Discovery centers by NIAID.
  • Researchers developed paired entry assays to screen approximately 650,000 compounds using a dual pseudotyped virus infection system, achieving an extensive ultra-high throughput screening with over 2.4 million wells tested.
  • The screening identified a total of 1812, 1506, and 2586 unique hits for LASV, MACV, and SARS2, respectively, and confirmed several promising compounds with low cytotoxicity and strong antiviral activity, with some compounds showing IC
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Broad-spectrum antivirals of protoporphyrins inhibit the entry of highly pathogenic emerging viruses.

Bioorg Chem

February 2021

Group of Peptides and Natural Products Research, School of Pharmaceutical Sciences, Southern Medical University, 1838 Guangzhou Avenue North, Guangzhou 510515, China. Electronic address:

Severe emerging and re-emerging viral infections such as Lassa fever, Avian influenza (AI), and COVID-19 caused by SARS-CoV-2 urgently call for new strategies for the development of broad-spectrum antivirals targeting conserved components in the virus life cycle. Viral lipids are essential components, and viral-cell membrane fusion is the required entry step for most unrelated enveloped viruses. In this paper, we identified a porphyrin derivative of protoporphyrin IX (PPIX) that showed broad antiviral activities in vitro against a panel of enveloped pathogenic viruses including Lassa virus (LASV), Machupo virus (MACV), and SARS-CoV-2 as well as various subtypes of influenza A viral strains with IC values ranging from 0.

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Analysis of the Cell Type-Dependence on the Arenavirus Z-Mediated Virus-Like Particle Production.

Front Microbiol

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Department of Emerging Infectious Diseases, Institute of Tropical Medicine, Nagasaki University, Nagasaki, Japan.

Several arenaviruses are highly pathogenic to humans, causing hemorrhagic fever. Discovery of anti-arenavirus drug candidates is urgently needed, although the molecular basis of the host- and organ-specific pathogenicity remains to be fully elucidated. The arenavirus Z protein facilitates production of virus-like particles (VLPs), providing an established method to assess virus budding.

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The arenaviruses Lassa virus (LASV), Junín virus (JUNV), and Machupo virus (MACV) can cause severe and fatal diseases in humans. Although these pathogens are closely related, the host immune responses to these virus infections differ remarkably, with direct implications for viral pathogenesis. LASV infection is immunosuppressive, with a very low-level interferon response.

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The arenavirus family consists of several highly pathogenic viruses, including the Old World (OW) arenavirus Lassa fever virus (LASV) and the New World (NW) Junin virus (JUNV) and Machupo virus (MACV). Host response to infection by these pathogenic arenaviruses is distinct in many aspects. JUNV and MACV infections readily induce an interferon (IFN) response in human cells, while LASV infection usually triggers an undetectable or weak IFN response.

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